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首页> 外文期刊>Journal of nanomaterials >Electrospun Collagen: A Tissue Engineering Scaffold with Unique Functional Properties in a Wide Variety of Applications
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Electrospun Collagen: A Tissue Engineering Scaffold with Unique Functional Properties in a Wide Variety of Applications

机译:电纺胶原蛋白:一种在各种应用中具有独特功能特性的组织工程支架

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摘要

Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be electrospun into tissue engineering scaffolds composed of nano- to micron-scale diameter fibers. We characterize the biological activity of these materials in a variety of tissue engineering applications, including endothelial cell-scaffold interactions, the onset of bone mineralization, dermal reconstruction, and the fabrication of skeletal muscle prosthetics. Electrospun collgen (esC) consistently exhibited unique biological properties in these functional assays. Even though gelatin can be spun into fibrillar scaffolds that resemble scaffolds of esC, our assays reveal that electrospun gelatin (esG) lacks intact a chains and is composed of proinflammatory peptide fragments. In contrast, esC retains intact a chains and is enriched in the a 2(1) subunit. The distinct fundamental properties of the constituent subunits that make up esC and esG appear to define their biological and functional properties.
机译:I型胶原蛋白和明胶(已变性的I型胶原蛋白的衍生物)可分别电纺成由纳米级至微米级直径的纤维组成的组织工程支架。我们表征了这些材料在各种组织工程应用中的生物活性,包括内皮细胞-支架相互作用,骨矿化的发生,真皮重建以及骨骼肌假体的制造。电纺胶原蛋白(esC)在这些功能测定中始终展现出独特的生物学特性。即使可以将明胶纺丝成类似于esC支架的原纤维支架,但我们的检测结果表明,电纺明胶(esG)缺少完整的链,由促炎性肽片段组成。相反,esC保留完整的a链,并富含2(1)亚基。组成esC和esG的组成亚基的独特基本特性似乎定义了它们的生物学和功能特性。

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